Smart Grid ICT Research Lines out of the European Project INTEGRIS

J. Selga, G. Corral, A. Zaballos, R. Pozuelo
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引用次数: 10

Abstract

The Smart Grid is at the same time a part of the Internet of Things and an example of a cyber-physical system where the physical power grid is surrounded by many intelligent and communication devices that allow for an enhanced management of the power network itself. The Smart Grid may bring great performance benefits to the society in terms of enabling the massive introduction of renewable energy sources in the power grid, the reduction of carbon emissions and improved sustainability among others. However, it may also bring big computer networking challenges to achieve the needed high reliability and low latency and even risks in terms of cybersecurity since it opens the power system to at least the same threats faced by the Internet. In fact, it is reasonable to think that the vulnerabilities will be still larger, considering the novel, heterogeneous and distributed nature of the Smart Grid. Furthermore, cybersecurity in Smart Grids is essential for the survival and feasibility of this electricity concept, thus making the risks still more relevant. Such ICT systems and computer networks supporting the Smart Grid concept need to be very efficient and to comply with very stringent requirements, at least for some of the services to be provided. They also need to efficiently integrate and manage in a single network a vast array of technologies among which diverse link layer technologies, meshed and non-meshed Ethernet networks, different cybersecurity protocols, networking at different layers, cognitive systems and storage and replication of data. The objective is to provide a system capable of providing adequate service to the wide array of applications foreseen for the Smart Grid but the complexity of the problem is really impressive and it is not possible to focus all of its aspects in a single paper or even project. The present paper presents these requirements, the solutions and results developed and tested in the FP7 European Project INTEGRIS as well as the future challenges and research lines identified as a result of the project and some prospective solutions.
智能电网ICT研究线来自欧洲项目INTEGRIS
智能电网同时是物联网的一部分,也是网络物理系统的一个例子,在这个系统中,物理电网被许多智能和通信设备所包围,这些设备可以增强对电网本身的管理。智能电网可以在电网中大量引入可再生能源、减少碳排放和提高可持续性等方面为社会带来巨大的性能效益。然而,它也可能带来巨大的计算机网络挑战,以实现所需的高可靠性和低延迟,甚至在网络安全方面的风险,因为它使电力系统至少面临与互联网相同的威胁。事实上,考虑到智能电网的新颖性、异构性和分布式特性,我们有理由认为这些漏洞还会更大。此外,智能电网中的网络安全对于这种电力概念的生存和可行性至关重要,因此使风险更加相关。这些支援智能电网概念的资讯及通讯科技系统和电脑网络必须非常有效率,并符合非常严格的要求,至少在提供的部分服务方面是如此。他们还需要在单一网络中有效地集成和管理大量技术,其中包括各种链路层技术,网状和非网状以太网,不同的网络安全协议,不同层的网络,认知系统以及数据的存储和复制。我们的目标是提供一个能够为智能电网预见的广泛应用提供充分服务的系统,但问题的复杂性确实令人印象深刻,不可能在一篇论文甚至一个项目中集中所有方面。本文介绍了这些要求、在FP7欧洲项目INTEGRIS中开发和测试的解决方案和结果,以及该项目确定的未来挑战和研究方向,以及一些潜在的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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